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physics.optics2026

An integrated all-van der Waals nanobeam laser

Aris Koulas-Simos, Pietro Metuh, Athanasios Paralikis +7

Transition-metal dichalcogenides offer a promising platform for integrated coherent light sources, yet lasing has largely relied on hybrid photonic architectures without direct qua…

physics.optics2026

Local droplet etching-assisted quantum dot epitaxy for telecom C-band quantum light emitters

Karolina E. Połczyńska, Paweł Wyborski, Michał Gawełczyk +4

Significant progress in quantum light sources for quantum communication applications requires reproducible and symmetric quantum emitters acting as single-photon sources capable of…

physics.optics2025

Integrated on-chip quantum light sources on a van der Waals platform

Pietro Metuh, Paweł Wyborski, Athanasios Paralikis +4

Scalable photonic quantum information technologies require a platform combining quantum light sources, waveguides, and detectors on a single chip. Here, we introduce a van der Waal…

physics.optics2025

High Purcell enhancement in all-TMDC nanobeam resonator designs with active monolayers for nanolasers

Felix Binkowski, Aris Koulas-Simos, Fridtjof Betz +9

We propose a nanobeam resonator incorporating an active monolayer, designed to achieve a high Purcell enhancement. The resonator is fully composed of transition-metal-dichalcogenid…

physics.optics2025

Exciton and biexciton preparation via coherent swing-up excitation in a GaAs quantum dot embedded in micropillar cavity

Claudia Piccinini, Aleksander Rodek, Abdulmalik A. Madigawa +9

Coherent control of quantum emitters is essential for scalable quantum photonic technologies. The recently proposed swing-up of quantum emitter (SUPER) scheme allows efficient and…

physics.optics2025

Toward triggered generation of indistinguishable single-photons from MoTe quantum emitters

Paweł Wyborski, Athanasios Paralikis, Pietro Metuh +4

Single-photon sources operating in the telecom band are fundamental components for long-distance optical quantum communication and information processing. Two-dimensional (2D) tran…